Papers
5
Total Citations
103
H-Index
4
About
Maylis Uhart is a researcher whose work bridges advanced manufacturing technologies across two distinct but complementary domains: sustainable construction and precision robotics. Her most significant contributions lie in the emerging field of concrete 3D printing, where her 2021 life cycle assessment of integrated additive–subtractive concrete processes has garnered 73 citations, establishing her as a notable voice in evaluating the environmental implications of next-generation construction methods. That same year, she helped define the machine architecture underpinning concrete hybrid manufacturing, presenting an innovative cable robot platform capable of combining additive and material removal modules — a meaningful step toward industrializing construction automation. Earlier in her career, Uhart focused on robotized fiber placement for aeronautical applications, collaborating with industry partner Coriolis Composites to improve accuracy and control through force-vision hybrid schemes, demonstrating a consistent interest in pushing precision manufacturing boundaries. Her trajectory reflects a researcher committed to translating complex robotic and process engineering challenges into practical, real-world solutions — from lightweight aerospace composites to large-scale sustainable construction — making her work highly relevant to students exploring automation, manufacturing sustainability, and applied robotics.
Research Focus
Key Achievements
Top Papers
- 1
- 2Concrete hybrid manufacturing: A machine architecture18 citations · 2021
- 3
- 4IMPROVING ACCURACY IN ROBOTIZED FIBER PLACEMENT4 citations · 2013
- 5